Tool body including a damping apparatus and a machining tool having such a tool body
11524340 ยท 2022-12-13
Assignee
Inventors
Cpc classification
F16F15/1428
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B23Q11/0035
PERFORMING OPERATIONS; TRANSPORTING
International classification
B23Q11/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A tool body includes a damping apparatus for damping vibrations in a machining tool having, besides the tool body, a member with at least one cutting edge to be secured to the tool body. The damping apparatus is arranged in an internal room of the tool body and includes a damper mass body with an axial bore and a central tube extending through the bore and which is rigidly secured to the damper mass body inside the through bore. A central tube is also at both ends thereof rigidly connected to a tool body fixed part and the central tube is made of a material with a spring property allowing the damper mass body to oscillate in the internal room perpendicularly to the longitudinal extension of the central tube.
Claims
1. A tool body including a damping apparatus for damping vibrations in a machining tool having besides the tool body a member with at least one cutting edge to be secured to the tool body, wherein the damping apparatus is arranged in an internal room of the tool body and comprises: a damper mass body with an axial through bore; and a central tube extending through said bore, the central bore being rigidly secured to the damper mass body inside the through bore, wherein the central tube is at both ends thereof rigidly connected to a tool body fixed part and the central tube is made of a material with a spring property allowing the damper mass body to oscillate in the internal room perpendicularly to the longitudinal extension of the central tube.
2. The tool body according to claim 1, wherein the central tube is made of steel or carbon fibre.
3. The tool body according to claim 1, wherein the through bore has at at least one end thereof a length portion with larger cross-section dimensions than the central tube leaving a space between the damper mass body and the central tube, and wherein an element is arranged to bridge the space between the central tube and the damper mass body at a location along the central tube.
4. The tool body according to claim 3, wherein said element is rigid.
5. The tool body according to claim 3, wherein said element has elastic properties.
6. The tool body according to claim 5, wherein said element is an O-ring made of rubber.
7. The tool body according to claim 3, wherein said element is movable along the central tube between different locations so as to change a spring constant of the central tube.
8. The tool body according to claim 3, wherein the through bore has a length portion and said element is located at both ends of the through bore.
9. The tool body according to claim 1, wherein the central tube is a machining tool cooling tube.
10. The tool body according to claim 1, wherein the damper mass body has a circular cylindrical shape with the through bore extending along a center axis thereof.
11. The tool body according to claim 1, wherein the internal room contains a damping fluid in an annular cavity separating the damper mass body radially from internal walls defining the internal room.
12. The tool body according to claim 11, wherein the damping fluid is oil.
13. A machining tool comprising a tool body according to claim 1.
14. Use of a tool body according to claim 1 to damp vibrations in a machining tool in operation.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) With reference to the appended drawings, below follows a specific description of embodiments of the invention cited as examples.
(2) In the drawings:
(3)
(4)
(5)
(6)
DETAILED DESCRIPTION OF EMBODIMENTS OF THE INVENTION
(7)
(8) The tool body includes a damping apparatus 6 for damping vibrations in the machining tool caused by machining operation, and this damping apparatus is arranged in an internal room 7 (see
(9) The through bore 10 of the damper mass body 9 has at each end thereof a length portion 16, 17 with larger cross section dimensions than the central tube leaving a space 18, 19 between the damper mass boy 9 and the central tube 11. The choice of length of these length portions will also influence the spring constant of the central tube 11.
(10)
(11) The invention is of course not restricted to the embodiments thereof described above, but many possibilities to modifications thereof would be apparent to a person with skill in the art without departing from the scope of the invention as defines in the appended claims.
(12) The length portions with larger cross-sections dimensions of the through bore of the damper mass body may have other lengths than shown in the figures or not be there at all. It is of course also possible to have the elements bridging the space between the central tube and the damper mass body immovably arranged or only one of them movable or having only one such element.